Leong Kevin G, Hu Xiaolong, Li Linheng, Noseda Michela, Larrivée Bruno, Hull Christopher, Hood Leroy, Wong Fred, Karsan Aly
Department of Experimental Medicine, University of British Columbia and British Columbia Cancer Agency, Vancouver, British Columbia V5Z 1L3, Canada.
Mol Cell Biol. 2002 Apr;22(8):2830-41. doi: 10.1128/MCB.22.8.2830-2841.2002.
Notch4 is a member of the Notch family of transmembrane receptors that is expressed primarily on endothelial cells. Activation of Notch in various cell systems has been shown to regulate cell fate decisions. The sprouting of endothelial cells from microvessels, or angiogenesis, involves the modulation of the endothelial cell phenotype. Based on the function of other Notch family members and the expression pattern of Notch4, we postulated that Notch4 activation would modulate angiogenesis. Using an in vitro endothelial-sprouting assay, we show that expression of constitutively active Notch4 in human dermal microvascular endothelial cells (HMEC-1) inhibits endothelial sprouting. We also show that activated Notch4 inhibits vascular endothelial growth factor (VEGF)-induced angiogenesis in the chick chorioallantoic membrane in vivo. Activated Notch4 does not inhibit HMEC-1 proliferation or migration through fibrinogen. However, migration through collagen is inhibited. Our data show that Notch4 cells exhibit increased beta1-integrin-mediated adhesion to collagen. HMEC-1 expressing activated Notch4 do not have increased surface expression of beta 1-integrins. Rather, we demonstrate that Notch4-expressing cells display beta1-integrin in an active, high-affinity conformation. Furthermore, using function-activating beta 1-integrin antibodies, we demonstrate that activation of beta1-integrins is sufficient to inhibit VEGF-induced endothelial sprouting in vitro and angiogenesis in vivo. Our findings suggest that constitutive Notch4 activation in endothelial cells inhibits angiogenesis in part by promoting beta 1-integrin-mediated adhesion to the underlying matrix.
Notch4是跨膜受体Notch家族的成员之一,主要在内皮细胞上表达。在各种细胞系统中,Notch的激活已被证明可调节细胞命运决定。微血管内皮细胞的出芽,即血管生成,涉及内皮细胞表型的调节。基于其他Notch家族成员的功能和Notch4的表达模式,我们推测Notch4的激活会调节血管生成。通过体外内皮细胞出芽试验,我们发现人真皮微血管内皮细胞(HMEC-1)中组成型激活的Notch4的表达可抑制内皮细胞出芽。我们还发现激活的Notch4在体内可抑制鸡胚绒毛尿囊膜中血管内皮生长因子(VEGF)诱导的血管生成。激活的Notch4不会抑制HMEC-1通过纤维蛋白原的增殖或迁移。然而,通过胶原蛋白的迁移受到抑制。我们的数据表明,Notch4细胞对胶原蛋白的β1整合素介导的粘附增加。表达激活的Notch4的HMEC-1的β1整合素表面表达并未增加。相反,我们证明表达Notch4的细胞以活跃的高亲和力构象展示β1整合素。此外,使用功能激活的β1整合素抗体,我们证明β1整合素的激活足以在体外抑制VEGF诱导的内皮细胞出芽,并在体内抑制血管生成。我们的研究结果表明,内皮细胞中组成型Notch4激活部分通过促进β1整合素介导的与基底膜的粘附来抑制血管生成。